Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequency control scheme achieving frequency regulation and economic dispatch. Based on an energy function of the power network, we derive an incremental passivity property for a well-known nonlinear structure preserving network model, differentiating between generator and load buses. Exploiting this property, we design distributed controllers that adjust the power generation. Notably, we explicitly include the turbine-governor dynamics, where first-order and the widely used second-order dynamics are analyzed in a unifying way. Due to the non-passive nature of the second-order turbine-governor dynamics, incorporating them is challenging, and we devel...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Recently we have been exploring the role of passivity and the internal model principle in power netw...
Recently we have been exploring the role of passivity and the internal model principle in power netw...
Recently we have been exploring the role of passivity and the internal model principle in power netw...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Motivated by an increase of renewable energy sources, we propose a distributed optimal load frequenc...
Recently we have been exploring the role of passivity and the internal model principle in power netw...
Recently we have been exploring the role of passivity and the internal model principle in power netw...
Recently we have been exploring the role of passivity and the internal model principle in power netw...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
This paper proposes a distributed sliding mode (SM) control strategy for optimal load frequency cont...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...
We present a systematic method for designing distributed generation and demand control schemes for s...